论文标题

沮丧的铁磁过渡中的AB堆积蜂窝BiLayer

Frustrated ferromagnetic transition in AB-stacked honeycomb bilayer

论文作者

Wang, S. Y., Wang, Y., Yan, S. H., Wang, C., Xiang, B. K., Liang, K. Y., He, Q. S., Watanabe, K., Taniguchi, T., Tian, S. J., Lei, H. C., Ji, W., Qi, Y., Wang, Y. H.

论文摘要

在二维(2D)铁磁体中,各向异性对于Mermin-Wagner定理规定的磁顺序至关重要。但是,当存在竞争各向异性时,相转换就会变得不平凡。在这里,利用扫描超导量子干扰装置显微镜的高度敏感的苏联及其苏联,我们探测了零磁场下ABC堆叠的CRBR3的自旋相关性。我们在厚样品中识别出高于临界温度(TC)的敏感性的平稳特征。它表示由易于平面内交换各向异性与单轴层间各向异性之间的竞争引起的交叉状态。临界行为从大量到2D的演变表明,各向异性之间的竞争在减小的维度中被放大。它导致双层的强烈沮丧的铁磁过渡,在TC的顺序上有波动,这与单层和散装都不同。我们的观察结果可能会在蜂窝晶格上提供2D局部旋转系统,以探索磁性挫败感。

In two-dimensional (2D) ferromagnets, anisotropy is essential for the magnetic ordering as dictated by the Mermin-Wagner theorem. But when competing anisotropies are present, the phase transition becomes nontrivial. Here, utilizing highly sensitive susceptometry of scanning superconducting quantum interference device microscopy, we probe the spin correlations of ABC-stacked CrBr3 under zero magnetic field. We identify a plateau feature in susceptibility above the critical temperature (Tc) in thick samples. It signifies a crossover regime induced by the competition between easy-plane intralayer exchange anisotropy versus uniaxial interlayer anisotropy. The evolution of the critical behavior from the bulk to 2D shows that the competition between the anisotropies is magnified in the reduced dimension. It leads to a strongly frustrated ferromagnetic transition in the bilayer with fluctuation on the order of Tc, which is distinct from both the monolayer and the bulk. Our observation potentially offers a 2D localized spin system on honeycomb lattice to explore magnetic frustration.

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